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This peak extension could be the way the specimen realizes a high elastic strain, even under tensile stress.
Peak extension angle between the head and T1 decreased with both increasing speed change and peak acceleration, and was, therefore, deemed unsuitable as a whiplash injury criterion for the BioRID dummy.
Second row forwards performed the best in the measure of peak flexion (44.04; 40.41–47.67 Nm) and lateral flexion right (69.42; 63.36–75.48 Nm) and left (66.31; 61.21 71.41 Nm) torque, while the front row forwards performed best in peak extension torque (65.60; 62.12 69.08 Nm).
Peak extension torque was evaluated at 60° of knee flexion.
Peak extension torque will be measured at 60° of knee flexion.
For the hip, peak extension (H1) was used in the analysis.
Similar(43)
The following events were defined during the stance phase of gait: Initial contact (threshold 25 N), midstance (identified as the midpoint temporal observation of the stance phase when normalized from 0-100%), peak hip extension (peak hip extension angle) and toe-off (threshold 25 N).
Conclusion: The static and dynamic trends to improvement in peak hip extension were of similar magnitude, suggesting that age-related reduction in peak hip extension during gait is the result of a static hip flexion contracture rather than a dynamic consequence.
Extension was significantly reduced only for the knee joint at midstance, with 2.9° (p=0.021), and at peak hip extension with 5.7° (p=0.016).
Main Outcome Measures: Peak hip extension and anterior pelvic tilt.
Peak L5/S1 extension moment magnitude was correlated with peak upper body flexion angle (r = 0.70).
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